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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 14, 1984 - Issue 9
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Original Articles

Ceric Trihydroxy Hydroperoxide Ce(OH)3O2H, A Regenerable, Mild, and A Versatile Reagent for the Oxidation of Organic Compounds

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Pages 875-882 | Published online: 19 Dec 2006

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F. Shirini, M. M. Lakouraj, I. Mohammadpour-Baltork & D. Asadi. (2003) Polymer Supported Reagents: Oxidative Selection Between Thiols. Synthetic Communications 33:11, pages 1833-1837.
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Ivica Cepanec, Hrvoje Mikuldaš & Vladimir Vinković. (2001) AN IMPROVED METHOD FOR SYNTHESIS OF JACOBSEN'S CATALYST. Synthetic Communications 31:19, pages 2913-2919.
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Peyman Salehi, Afsaneh Farrokhi & Mostafa Gholizadeh. (2001) OXIDATIVE COUPLING OF THIOLS BY PYRIDINIUM CHLOROCHROMATE IN SOLUTION AND SOLVENT FREE CONDITIONS. Synthetic Communications 31:18, pages 2777-2781.
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N. Iranpoor, H. Firouzabadi & M.A. Zolfigol. (1998) Dinitrogen Tetroxide Copper Nitrate Complex [Cu(NO3)2.N2O4] As a New Nitrosating Agent for Catalytic Coupling of Thiols via Thionitrite. Synthetic Communications 28:2, pages 367-375.
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H. Firouzabadi, P. Salehi, A.R. Sardarian & M. Seddighi. (1991) Oxidation of Benzylic Hydrocarbons to Carbonyl Compounds by Tetrapyridinesilver(II) Peroxydisulfate Ag(Py)4S2O8 Under Non-Aqueous and Aprotic Condition. Synthetic Communications 21:10-11, pages 1121-1127.
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N. Iranpoor & I. Mohammadpour Baltork. (1990) Mild, Efficient and Selective Opening of Epoxides with Alcohols Catalyzed by Ceric(IV) Ammonium Nitrate. Synthetic Communications 20:18, pages 2789-2797.
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Articles from other publishers (25)

Habib Ur Rehman Shah, Khalil Ahmad, Hafiza Ammara Naseem, Sajidah Parveen, Muhammad Ashfaq, Tariq Aziz, Salma Shaheen, Afshain Babras & Amir Shahzad. (2021) Synthetic routes of azo derivatives: A brief overview. Journal of Molecular Structure 1244, pages 131181.
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Gyan Chandra PariyarTandra Kundu, Bijeta Mitra, Suvodip Mukherjee & Pranab Ghosh. (2020) Ethyl lactate: An Efficient Green Mediator for Transition Metal Free Synthesis of Symmetric and Unsymmetric Azobenzenes. ChemistrySelect 5:31, pages 9781-9786.
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Satoru Hiroto. (2019) Synthesis of π‐Functional Molecules through Oxidation of Aromatic Amines. Chemistry – An Asian Journal 14:15, pages 2514-2523.
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Alberto Bucci, Gabriel Menendez Rodriguez, Gianfranco Bellachioma, Cristiano Zuccaccia, Albert Poater, Luigi Cavallo & Alceo Macchioni. (2016) An Alternative Reaction Pathway for Iridium-Catalyzed Water Oxidation Driven by Cerium Ammonium Nitrate (CAN). ACS Catalysis 6:7, pages 4559-4563.
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Shweta Kumari, Amiya Shekhar & Devendra D. Pathak. (2014) Graphene oxide supported MnO 2 nanorods: an efficient heterogeneous catalyst for oxidation of aromatic amines to azo-compounds . RSC Adv. 4:105, pages 61187-61192.
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Estíbaliz Merino. (2011) Synthesis of azobenzenes: the coloured pieces of molecular materials. Chemical Society Reviews 40:7, pages 3835.
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Florian Hamon, Florence Djedaini-Pilard, Francis Barbot & Christophe Len. (2009) Azobenzenes—synthesis and carbohydrate applications. Tetrahedron 65:49, pages 10105-10123.
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Mohammad Mehdi Khodaei, Peyman Salehi, Ateesa Yazdanipoor & Bibi Fatemeh Mirjalili. (2006) Oxidative Deprotection of Acetals and Trimethylsilylethers by γ-PCC-SiO 2 . Journal of the Chinese Chemical Society 53:4, pages 881-886.
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Koen Binnemans. 2006. Handbook on the Physics and Chemistry of Rare Earths Volume 36. Handbook on the Physics and Chemistry of Rare Earths Volume 36 281 392 .
Habib Firouzabadi, Nasser Iranpoor & Atefeh Garzan. (2005) Pronounced Catalytic Effect of Micellar Solution of Sodium Dodecyl Sulfate (SDS) for Regioselective Iodination of Aromatic Compounds with a Sodium Iodide/Cerium(IV) Trihydroxide Hydroperoxide System. Advanced Synthesis & Catalysis 347:15, pages 1925-1928.
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Yang Zhang & Robert A. Flowers. (2003) Mechanistic Investigation of Substrate Oxidation by Ce(IV) Reagents in Acetonitrile. The Journal of Organic Chemistry 68:11, pages 4560-4562.
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Behzad Zeynizadeh. (2019) Oxidative Coupling of Thiols to Disulfides with Iodine in Wet Acetonitrile. Journal of Chemical Research 2002:11, pages 564-566.
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F.L.S. Purgato & J.R. Romero. (2002) Electrooxidation of Hydroxyl Compounds Using Cerium Salts as Mediators: The Importance of Substrate Size for Catalyst Regeneration. Journal of Catalysis 209:2, pages 394-400.
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H. Firouzabadi. 2001. Encyclopedia of Reagents for Organic Synthesis. Encyclopedia of Reagents for Organic Synthesis.
Kazuhiko Orito, Takahiro Hatakeyama, Mitsuhiro Takeo, Shiho Uchiito, Masao Tokuda & Hiroshi Suginome. (1998) Dimerization of anilines and benzylamines with mercury(II) oxide-iodine reagent. Tetrahedron 54:29, pages 8403-8410.
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William P. Griffith, Ruksana G.H. Moreea & Helena I.S. Nogueira. (1996) Lanthanide complexes as oxidation catalysts for alcohols and alkenes. Polyhedron 15:20, pages 3493-3500.
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F.P.W. Agterberg, W.L. Driessen, J. Reedijk, H. Oeveringb & W. Buijs. 1994. New Developments in Selective Oxidation II, Proceedings of the Second World Congress and Fourth European Workshop Meeting. New Developments in Selective Oxidation II, Proceedings of the Second World Congress and Fourth European Workshop Meeting 639 646 .
Árpád Molnár. 1993. Hydroxyl, Ether and Peroxide Groups (1993). Hydroxyl, Ether and Peroxide Groups (1993) 937 1018 .
Habib Firouzabadi, Peyman Salehi & Iraj Mohammadpour-Baltork. (1992) Tetrakis(pyridine)silver(II) Peroxodisulfate, [Ag(py) 4 ]S 2 O 8 , a Reagent for the Oxidative Transformations . Bulletin of the Chemical Society of Japan 65:10, pages 2878-2880.
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H.Mohindra Chawla, S.K. Sharma, K. Chakrabarty & S. Bhanumati. (1988) Cerium(IV) induced hydroxylation of c-alkylated hydrocarbons and phenols. Tetrahedron 44:4, pages 1227-1234.
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. 1988. Compendium of Organic Synthetic Methods. Compendium of Organic Synthetic Methods 51 66 .
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H.B. Kagan & J.L. Namy. (1986) Tetrahedron report number 213. Tetrahedron 42:24, pages 6573-6614.
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Tse-Lok Ho. 1986. Organic Syntheses by Oxidation with Metal Compounds. Organic Syntheses by Oxidation with Metal Compounds 569 631 .
H. FIROUZABADI & N. IRANPOOR. (2016) ChemInform Abstract: CERIC TRIHYDROXY HYDROPEROXIDE CE(OH)3O2H, A REGENERABLE, MILD, AND A VERSATILE REAGENT FOR THE OXIDATION OF ORGANIC COMPOUNDS. Chemischer Informationsdienst 16:5.
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